2022-12-23
In the context of copper-catalyzed nitrene transfer to olefins, many systems operate upon mixing a CuX salt (X = halide, OTf) and a polydentate N-based ligand, assuming that the X ligand is displaced from the coordination sphere toward a counterion position. Herein, we demonstrated that such general assumption should be in doubt since studies carried out with the well-defined copper(I) complexes (TTM)CuCl and [(TTM)Cu(NCMe)]PF6 (TTM = tris(triazolyl)methane ligand) demonstrate a dual behavior from a catalytic and mechanistic point of view that exclusively depends on the presence or absence of the chloride ligand bonded to the metal center. When coordinated, the turnover-limiting step corresponds to the formation of the carbon–nitrene bond, whereas in its absence, the highest barrier corresponds to the formation of the copper–nitrene intermediate.
Article
Published version
English
8 p.
ACS Publications
Ministerio de Ciencia e Innovación for Grants PID2020-113797RB-C21, PID2020-112825RB-I00, and CEX2019-000925-S also funded by FEDER “Una manera de hacer Europa”.
Junta de Andalucía (P20-00348)
Universidad de Huelva (P.O.Feder UHU-202016)
A.M.R thanks Ministerio de Universidades for FPU fellowships (FPU17/02738)
CERCA Program/Generalitat de Catalunya
S.L.-R. thanks Generalitat de Catalunya for the FI–Agaur predoctoral contract (2019FI_B 01002)
Papers [1288]